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稳定分子内DNA三链螺旋形成的能量学

Energetics of a stable intramolecular DNA triple helix formation.

作者信息

Völker J, Botes D P, Lindsey G G, Klump H H

机构信息

Department of Biochemistry, University of Cape Town, Rondebosch, Republic of South Africa.

出版信息

J Mol Biol. 1993 Apr 20;230(4):1278-90. doi: 10.1006/jmbi.1993.1241.

Abstract

We have designed and synthesized by conventional chemical techniques a 38mer oligonucleotide consisting of a 5'd(Pu)10d(C)4d(Py)10d(T)4d(Py)10(3') sequence. This oligonucleotide assumes a randomly coiled conformation at pH 12. At pH 8.0 a hairpin helix forms between its 5' purine decamer sequence and the consecutive pyrimidine decamer leaving the second pyrimidine decamer as a dangling disordered 3' extension. On reducing the pH to 4.5 this second pyrimidine decamer folds back onto the major groove of the hairpin helix resulting in an intramolecular triple-stranded stem-loop structure. We have used a variety of biochemical (gel mobility, P1 nuclease digestion) and biophysical (ultraviolet light and circular dichroism spectroscopy, fluorimetry, microcalorimetry) techniques to characterize the different conformers, their stability and the folding pathway into an intramolecular triple helix. The thermodynamic properties of this intramolecular triple strand in 100 mM-Na+ are: tm, 71 degrees C; delta HvH, 119.4(+/- 11.9) kcal mol-1; delta Hcal, 121.9 (+/- 6.1) kcal mol-1 at pH 4.5; those of the hairpin are: tm, 63 degrees C; delta HvH, 71.7(+/- 4.0) kcal mol-1; delta Hcal, 69.9(+/- 3.5) kcal mol-1 at pH 8.0. At intermediate pH values, the triplex to coil transition breaks up into its component triplex to hairpin and hairpin to coil transitions with thermodynamic properties: tm, 41 degrees C; delta HvH, 58.7(+/- 4.2) kcal mol-1; delta Hcal, 39.8(+/- 2.0) kcal mol-1; and tm, 63 degrees C; delta HvH, 71.7(+/- 4.0) kcal mol-1; delta Hcal, 69.6(+/- 3.5) kcal mol-1 at pH 6.7.

摘要

我们通过传统化学技术设计并合成了一种38聚体寡核苷酸,其序列为5'd(Pu)10d(C)4d(Py)10d(T)4d(Py)10(3')。该寡核苷酸在pH 12时呈随机卷曲构象。在pH 8.0时,其5'端嘌呤十聚体序列与连续的嘧啶十聚体之间形成发夹螺旋,使第二个嘧啶十聚体作为一个无序的3'端悬垂延伸。将pH降至4.5时,第二个嘧啶十聚体折叠回到发夹螺旋的大沟上,形成分子内三链茎环结构。我们使用了多种生化技术(凝胶迁移率、P1核酸酶消化)和生物物理技术(紫外光和圆二色光谱、荧光测定法、微量量热法)来表征不同的构象体、它们的稳定性以及形成分子内三螺旋的折叠途径。在100 mM - Na⁺中,这种分子内三链的热力学性质为:在pH 4.5时,熔解温度(tm)为71℃;范特霍夫焓变(ΔHvH)为119.4(±11.9)kcal/mol;量热焓变(ΔHcal)为121.9(±6.1)kcal/mol;发夹结构的热力学性质为:在pH 8.0时,tm为63℃;ΔHvH为71.7(±4.0)kcal/mol;ΔHcal为69.9(±3.5)kcal/mol。在中间pH值时,三链到卷曲的转变分解为其组成部分的三链到发夹和发夹到卷曲的转变,其热力学性质为:在pH 6.7时,tm为41℃;ΔHvH为58.7(±4.2)kcal/mol;ΔHcal为39.8(±2.0)kcal/mol;以及tm为63℃;ΔHvH为71.7(±4.0)kcal/mol;ΔHcal为69.6(±3.5)kcal/mol。

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